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Cobalt -, cis

Cobalt, cis-chloroamminebis(l, 2-ethanediamine)-optical isomerism, 1,12 Cobalt, chlorobis(l,2-ethanediamine)-solvation, 1,503... [Pg.106]

A key intermediate, 163, which possesses all but one chiral center of (+ )-brefeldin, has been prepared by the enantiocontrolled cycloaddition of the chiral fi,/3-unsaturated ester 162 to 154[107], Synthesis of phyllocladane skeleton 165 has been carried out by the Pd-catalyzed cycloaddition of the unsaturated diester 164 and cobalt-catalyzed cycloaddition of alkynes as key reactions[108]. Intramolecular cycloaddition to the vinylsulfone in 166 proceeds smoothly to give a mixture of the trans and cis isomers in a ratio of 2.4 1[109], Diastereocontrolled cycloaddition of the hindered vinylsulfone 167 affords a single stereoisomeric adduct, 168, which is used for the synthesis of the spirocarbocyclic ring of ginkgolide[l 10],... [Pg.313]

The first identified complexes of unsubstituted thiazole were described by Erlenmeyer and Schmid (461) they were obtained by dissolution in absolute alcohol of both thiazole and an anhydrous cobalt(II) salt (Table 1-62). Heating the a-CoCri 2Th complex in chloroform gives the 0 isomer, which on standirtg at room temperature reverses back to the a form. According to Hant2sch (462), these isomers correspond to a cis-trans isomerism. Several complexes of 2,2 -(183) and 4,4 -dithiazolyl (184) were also prepared and found similar to pyridyl analogs (185) (Table 1-63). Zn(II), Fe(II), Co(II), Ni(II) and Cu(II) chelates of 2.4-/>is(2-pyridyl)thiazole (186) and (2-pyridylamino)-4-(2-pyridy])thiazole (187) have been investigated. The formation constants for species MLr, and ML -" (L = 186 or 187) have been calculated from data obtained by potentiometric, spectrophotometric, and partition techniques. [Pg.127]

Co, Ci)-Si-B BCo powder, tape, RS foil cobalt-base aircraft engines. [Pg.243]

Polymers containing 90-98% of a c 5-1,4-structure can be produced using Ziegler-Natta catalyst systems based on titanium, cobalt or nickel compounds in conjuction with reducing agents such as aluminium alkyls or alkyl halides. Useful rubbers may also be obtained by using lithium alkyl catalysts but in which the cis content is as low as 44%. [Pg.290]

Fluorination of cis,rran.t,trani-l,5,9-cyclododecatriene with cobalt trifluoride gives a 50% yield of perfluoroperhydroacenaphthene [2[Pg.128]

H. W. Quinn and J. H. Tsai Cis and Trans Effects in Cobalt(Ill) Complexes... [Pg.438]

No cases of cis/trans isomerism have yet been reported among organo-cobalt(III) complexes, even among compounds not covered by this review. Complexes such as [R2Co(bipy)2] all have the cis configuration steric hindrance would be greatly increased by the coplanarity of the two bipyridyl ligands in the trans isomer 123). [Pg.348]

Duong and Gaudemer studied the alkylation of (presumably) [Co -(DMG)2X], where X is pyridine, aniline, or water, by the cis and trans isomers of )S-bromostyrene (PhCH=CHBr) and the methyl ester of )3-chloroacrylic acid (CHCl=CHCOOMe) in 50% aqueous methanol, and found that the configuration of the double bond remained unchanged, i.e., the halogen had simply been replaced by cobalt. They suggested that the reaction involved the addition of cobalt, followed by the elimination of the halide ion (apparently without rotation around the C—C bond), i.e.. [Pg.355]

But in neutral solution, where the complex is present mainly as the hydride, the only product was the a-phenylvinyl complex (CH2=CHPhCo). When the Co(I) complex was formed by reduction with D2 or NaBD4 in CH3OH the reaction in neutral solution gave a product containing a significant amount of deuterium in the position cis to cobalt. This establishes the mechanism as the stereospecific cis addition of Co—D across the double bond, i.e.,... [Pg.357]

With a view to determining the equilibrium constant for the isomerisation, the rates of reduction of an equilibrium mixture of cis- and rra/i5-Co(NH3)4(OH2)N3 with Fe have been measured by Haim S . At Fe concentrations above 1.5 X 10 M the reaction with Fe is too rapid for equilibrium to be established between cis and trans isomers, and two rates are observed. For Fe concentrations below 1 X lO M, however, equilibrium between cis and trans forms is maintained and only one rate is observed. Detailed analysis of the rate data yields the individual rate coefficients for the reduction of the trans and cis isomers by Fe (24 l.mole sec and 0.355 l.mole .sec ) as well as the rate coefficient and equilibrium constant for the cw to trans isomerisation (1.42 x 10 sec and 0.22, respectively). All these results apply at perchlorate concentrations of 0.50 M and at 25 °C. Rate coefficients for the reduction of various azidoammine-cobalt(lll) complexes are collected in Table 12. Haim discusses the implications of these results on the basis that all these systems make use of azide bridges. The effect of substitution in Co(III) by a non-bridging ligand is remarkable in terms of reactivity towards Fe . The order of reactivity, trans-Co(NH3)4(OH2)N3 + > rra/is-Co(NH3)4(N3)2" > Co(NH3)sN3 +, is at va-... [Pg.196]


See other pages where Cobalt -, cis is mentioned: [Pg.507]    [Pg.507]    [Pg.644]    [Pg.669]    [Pg.680]    [Pg.682]    [Pg.190]    [Pg.1242]    [Pg.143]    [Pg.507]    [Pg.507]    [Pg.644]    [Pg.669]    [Pg.680]    [Pg.682]    [Pg.190]    [Pg.1242]    [Pg.143]    [Pg.168]    [Pg.345]    [Pg.427]    [Pg.461]    [Pg.1123]    [Pg.230]    [Pg.690]    [Pg.278]    [Pg.404]    [Pg.29]    [Pg.197]    [Pg.35]    [Pg.53]    [Pg.293]    [Pg.334]    [Pg.349]    [Pg.349]    [Pg.358]    [Pg.401]    [Pg.403]    [Pg.411]    [Pg.411]    [Pg.422]    [Pg.276]    [Pg.48]    [Pg.873]    [Pg.199]   
See also in sourсe #XX -- [ Pg.16 , Pg.94 ]




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Cis and Trans Effects in Cobalt

Cis and Trans Effects in Cobalt Complexes

Cobalt bromide, cis-, monohydrate

Cobalt dibromide, cis-, monohydrate

Tetraamine-cis-bis(5-nitro-2H-Tetrazolato-N2) Cobalt (III) Perchlorate

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